Literature DB >> 18077356

Sequence of late molecular events in the activation of rhodopsin.

Bernhard Knierim1, Klaus Peter Hofmann, Oliver P Ernst, Wayne L Hubbell.   

Abstract

Activation of the G protein-coupled receptor rhodopsin involves both the motion of transmembrane helix 6 (TM6) and proton exchange events. To study how these activation steps relate to each other, spin-labeled rhodopsin in solutions of dodecyl maltoside was used so that time-resolved TM6 motion and proton exchange could each be monitored as a function of pH and temperature after an activating light flash. The results reveal that the motion of TM6 is not synchronized with deprotonation of the Schiff base that binds the chromophore to the protein but is an order of magnitude slower at 30 degrees C. However, TM6 motion and the uptake of a proton from solution in the neutral pH range follow the same time course. Importantly, the motion of TM6 is virtually independent of pH, as is Schiff base deprotonation under the conditions used, whereas proton uptake titrates with a pK of 6.5. This finding shows that proton uptake is a consequence rather than a cause of helix motion. Activated rhodopsin binds to and subsequently activates the cognate G protein, transducin. It has been shown that peptides derived from the C terminus of the transducin alpha-subunit mimic in part binding of the intact G protein. These peptides are found to bind to rhodopsin after TM6 movement, resulting in the release of protons. Collectively, the data suggest the following temporal sequence of events involved in activation: (i) internal Schiff base proton transfer; (ii) TM6 movement; and (iii) proton uptake from solution and binding of transducin.

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Year:  2007        PMID: 18077356      PMCID: PMC2154424          DOI: 10.1073/pnas.0710393104

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  54 in total

1.  Historical review: a brief history and personal retrospective of seven-transmembrane receptors.

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4.  Evidence for differently protonated forms of metarhodopsin II as intermediates in the decay of membrane-bound cattle rhodopsin.

Authors:  N Bennett
Journal:  Biochem Biophys Res Commun       Date:  1978-07-28       Impact factor: 3.575

5.  Proton uptake by light induced interaction between rhodopsin and G-protein.

Authors:  A Schleicher; K P Hofmann
Journal:  Z Naturforsch C Biosci       Date:  1985 May-Jun

6.  Activation of the rod G-protein Gt by the thrombin receptor (PAR1) expressed in Sf9 cells.

Authors:  C Seibert; C Harteneck; O P Ernst; G Schultz; K P Hofmann
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Authors:  D Emeis; H Kühn; J Reichert; K P Hofmann
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8.  Shift in the relation between flash-induced metarhodopsin I and metarhodpsin II within the first 10% rhodopsin bleaching in bovine disc membranes.

Authors:  D Emeis; K P Hofmann
Journal:  FEBS Lett       Date:  1981-12-28       Impact factor: 4.124

9.  Optical study of the light-induced protonation changes associated with the metarhodopson II intermediate in rod-outer-segment membranes.

Authors:  N Bennett
Journal:  Eur J Biochem       Date:  1980-10

10.  Structure of bovine rhodopsin in a trigonal crystal form.

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  66 in total

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2.  Retinal dynamics underlie its switch from inverse agonist to agonist during rhodopsin activation.

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Review 8.  Signal transducing membrane complexes of photoreceptor outer segments.

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9.  Co-evolving stability and conformational homogeneity of the human adenosine A2a receptor.

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